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Hybrid Mixture Model Based on a Hybrid Optimization for Spectrum Sensing to Improve the Performance of MIMO-OFDM Systems

机译:基于杂交优化对频谱感测的混合混合模型,提高MIMO-OFDM系统性能

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Cognitive radio (CR) is the trending domain in addressing the inadequate bands for communication, and spectrum sensing is the hectic challenge need to be addressed extensively. In the conventional CRs, the communication is restricted to the secondary users (SUs) in the allocated bands causing the underutilization of the available band. Thus, with the aim to afford higher throughput and spectrum efficiency, this paper introduces the hybrid mixture model for spectrum sensing in the multiple-input-multiple-output (MIMO) systems and the effectiveness is evaluated based on the evaluation parameters, such as detection probability and probability of false alarm. The signal received through the orthogonal frequency-division multiplexing (OFDM) antenna is employed for analyzing the spectral availability for which the energy and Eigen statistics of the signal is generated, which forms the input to the Hybrid mixture model. The developed Hybrid mixture model is the integration of the Gaussian Mixture Model (GMM) and Whale Elephant-Herd Optimization (WEHO). The GMM is subjected to the optimal timing using the WEHO, which is the modification of the standard Whale Optimization Algorithm (WOA) with the Elephant-Herd Optimization (EHO). The analysis reveals that the proposed spectrum sensing model acquired the maximal detection probability and minimal false alarm probability of 99.9% and 46.4%, respectively. The proposed hybrid mixture model derives the spectrum availability and ensures the effective communication in CR without any interference.
机译:认知无线电(CR)是解决通信的不充分频段的趋势域,并且频谱感测是需要广泛寻址的忙碌挑战。在传统的CRS中,通信仅限于分配的频带中的辅助用户(SUS),导致可用频带的未充分利用。因此,随着较高的产量和频谱效率的目的,本文介绍了多输入 - 多输出(MIMO)系统中的光谱感测的混合混合混合模型,并且基于评估参数评估了有效性,例如检测误报的概率和概率。通过正交频分复用(OFDM)天线接收的信号用于分析信号的频谱可用性,其产生信号的能量和特征统计,这形成了混合混合混合模型的输入。开发的混合混合物模型是高斯混合模型(GMM)和鲸鱼大象 - 群优化(Weho)的集成。 GMM使用WEHO进行最佳定时,这是用大象群优化(EHO)的标准鲸优化算法(WOA)的修改。该分析表明,所提出的频谱传感模型分别获得了最大检测概率和最小误报概率为99.9%和46.4%。所提出的混合混合物模型源于频谱可用性,并确保CR中的有效沟通而没有任何干扰。

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